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One-Tap Wideband I/Q Compensation for Zero-IF Filters

机译:零中频滤波器的一键式宽带I / Q补偿

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摘要

The I/Q imbalance is one of the performance bottlenecks in transceivers with stringent requirements imposed by applications such as 802.11a. The mismatch between the frequency responses of two analog low-pass filters, used, e.g., for channel selection in zero-IF receivers, makes this I/Q imbalance frequency dependent. Usually, frequency-dependent I/Q mismatch is estimated and corrected by adaptive techniques, which are complex to implement and may converge slowly due to noise. In this work, a simple, delay-based I/Q compensation scheme is proposed based on an extensive statistical analysis. Its digital implementation uses only two coefficients, which are tuned by a one-step two-tone error estimation. Simulations show that this hardware-efficient scheme significantly reduces the I/Q imbalance.
机译:I / Q不平衡是收发器中性能瓶颈之一,对诸如802.11a之类的应用提出了严格的要求。两个模拟低通滤波器的频率响应之间的失配(例如用于零中频接收器中的信道选择)使该I / Q不平衡频率相关。通常,频率相关的I / Q失配是通过自适应技术估算和纠正的,该技术实施起来很复杂,并且可能由于噪声而缓慢收敛。在这项工作中,基于广泛的统计分析,提出了一种简单的基于延迟的I / Q补偿方案。它的数字实现仅使用两个系数,这些系数可通过一步两音误差估计进行调整。仿真表明,这种具有硬件效率的方案显着减少了I / Q不平衡。

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